ABSTRACT The two-dimensional (2D) magnet, a long-standing missing member in the family of 2D functional materials, is promising for nextgeneration information technology …
The MXene field continues to grow and expand as more research groups begin to study this fascinating and very large class of 2D materials. While synthesis and applications of …
A Zhou, Y Liu, S Li, X Wang, G Ying, Q Xia… - Journal of Advanced …, 2021 - Springer
Abstract MAX phases (Ti 3 SiC 2, Ti 3 AlC 2, V 2 AlC, Ti 4 AlN 3, etc.) are layered ternary carbides/nitrides, which are generally processed and researched as structure ceramics …
The variety of compositions and structures of MXenes has led to the formation of a large and rapidly expanding family of 2D materials. In the past 2 years, the MXenes field has seen …
More than a decade after the discovery of MXene, there has been a remarkable increase in research on synthesis, characterization, and applications of this growing family of two …
The M n+ 1 AX n, or MAX, phases are nanolayered, hexagonal, machinable, early transition- metal carbides and nitrides, where n= 1, 2, or 3, M is an early transition metal, A is an A …
Since their discovery in 2011, MXenes (abbreviation for transition metal carbides, nitrides, and carbonitrides) have emerged as a rising star in the family of 2D materials owing to their …
In 2011, a new family of two dimensional (2D) carbides, carbonitrides and nitrides–labeled MXenes–was discovered. Since then the number of papers on these materials has …
MXenes are a large family of two-dimensional (2D) transition-metal carbides, nitrides, and carbonitrides. The MXene family has expanded since their original discovery in 2011, and …